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基于用户的 B 样条显式活动曲面变形实现超声心动图数据的实时 3D 交互式分割。

Real-time 3D interactive segmentation of echocardiographic data through user-based deformation of B-spline explicit active surfaces.

机构信息

Laboratory on Cardiovascular Imaging and Dynamics, Department of Cardiovascular Sciences, KU Leuven, Belgium; Université de Lyon, CREATIS, CNRS UMR5220, Inserm U1044, INSA-Lyon, Université Lyon 1, France; DIGARC, Polytechnic Institute of Cávado and Ave, Barcelos, Portugal.

Laboratory on Cardiovascular Imaging and Dynamics, Department of Cardiovascular Sciences, KU Leuven, Belgium.

出版信息

Comput Med Imaging Graph. 2014 Jan;38(1):57-67. doi: 10.1016/j.compmedimag.2013.10.002. Epub 2013 Oct 22.

Abstract

Image segmentation is an ubiquitous task in medical image analysis, which is required to estimate morphological or functional properties of given anatomical targets. While automatic processing is highly desirable, image segmentation remains to date a supervised process in daily clinical practice. Indeed, challenging data often requires user interaction to capture the required level of anatomical detail. To optimize the analysis of 3D images, the user should be able to efficiently interact with the result of any segmentation algorithm to correct any possible disagreement. Building on a previously developed real-time 3D segmentation algorithm, we propose in the present work an extension towards an interactive application where user information can be used online to steer the segmentation result. This enables a synergistic collaboration between the operator and the underlying segmentation algorithm, thus contributing to higher segmentation accuracy, while keeping total analysis time competitive. To this end, we formalize the user interaction paradigm using a geometrical approach, where the user input is mapped to a non-cartesian space while this information is used to drive the boundary towards the position provided by the user. Additionally, we propose a shape regularization term which improves the interaction with the segmented surface, thereby making the interactive segmentation process less cumbersome. The resulting algorithm offers competitive performance both in terms of segmentation accuracy, as well as in terms of total analysis time. This contributes to a more efficient use of the existing segmentation tools in daily clinical practice. Furthermore, it compares favorably to state-of-the-art interactive segmentation software based on a 3D livewire-based algorithm.

摘要

图像分割是医学图像分析中普遍存在的任务,需要估计给定解剖目标的形态或功能属性。虽然自动处理是非常理想的,但在日常临床实践中,图像分割仍然是一个需要监督的过程。事实上,具有挑战性的数据通常需要用户交互来捕获所需的解剖细节水平。为了优化 3D 图像的分析,用户应该能够有效地与任何分割算法的结果进行交互,以纠正任何可能的分歧。在之前开发的实时 3D 分割算法的基础上,我们在本工作中提出了一种扩展,以实现一种交互式应用程序,其中用户信息可以在线用于指导分割结果。这使得操作员和基础分割算法能够协同工作,从而提高分割准确性,同时保持总分析时间具有竞争力。为此,我们使用几何方法形式化用户交互范例,其中用户输入被映射到非笛卡尔空间,同时该信息用于将边界驱动到用户提供的位置。此外,我们提出了一种形状正则化项,该项改善了与分割表面的交互,从而使交互式分割过程不那么繁琐。所得到的算法在分割准确性和总分析时间方面都具有竞争力。这有助于更有效地利用现有的分割工具进行日常临床实践。此外,它与基于 3D 活线的算法的最先进的交互式分割软件相比具有优势。

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